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<i>Staphylococcus aureus</i> biofilm: a complex developmental organism

Molecular Microbiology · 2017 · Vol. 104(3) · pp. 365–376
Derek E. MoormeierKenneth W. Bayles

Abstract

Chronic biofilm-associated infections caused by Staphylococcus aureus often lead to significant increases in morbidity and mortality, particularly when associated with indwelling medical devices. This has triggered a great deal of research attempting to understand the molecular mechanisms that control S. aureus biofilm formation and the basis for the recalcitrance of these multicellular structures to antibiotic therapy. The purpose of this review is to summarize our current understanding of S. aureus biofilm development, focusing on the description of a newly-defined, five-stage model of biofilm development and the mechanisms required for each stage. Importantly, this model includes an alternate view of the processes involved in microcolony formation in S. aureus and suggests that these structures originate as a result of stochastically regulated metabolic heterogeneity and proliferation within a maturing biofilm population, rather than a subtractive process involving the release of cell clusters from a thick, unstructured biofilm. Importantly, it is proposed that this new model of biofilm development involves the genetically programmed generation of metabolically distinct subpopulations of cells, resulting in an overall population that is better able to adapt to rapidly changing environmental conditions.

Bacterial biofilms and quorum sensingAntimicrobial Resistance in StaphylococcusAntimicrobial Peptides and ActivitiesBiofilmBiologyMulticellular organismStaphylococcus aureusMicrobiologyOrganismPopulationBacteriaCellGenetics

MeSH terms

Staphylococcus aureusBiofilms

Funding

  • University of Nebraska Medical Center
  • National Institutes of Health
Citations
524
FWCI
12.43
field-weighted impact
References
103
Percentile
99%
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Cited by
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References
agr-Mediated Dispersal of Staphylococcus aureus Biofilms
PLoS Pathogens · 2008 · 937 citations
Physiological heterogeneity in biofilms
Nature Reviews Microbiology · 2008 · 2,359 citations
Periprosthetic Joint Infection
The Journal of Arthroplasty · 2010 · 290 citations
The biofilm matrix
Nature Reviews Microbiology · 2010 · 9,374 citations
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